THERMO6 Flashcards

1
Q

State Variables

A
  • P, V, T, Eint are state variables

- this means that once a point is marked on a P-V diagram (for a fixed sample) defines all of these variables

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2
Q

Are Q and W state variables?

A

No, they are a measure of energy that flows into/out of a system and depend on the route taken between points on a PV diagram rather than the positions of the points themselves

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3
Q

Equations that always true for both real gases

A
ΔEint = Qin + Won
Won = -∫P dv
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4
Q

Equations that are always true for ideal gases

A
ΔEint = Qin + Won
Won = -∫P dv
PV = nRT
ΔEint = CvΔT
Eint = DoF*n*1/2 RT
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5
Q

Isobaric Process

Definition

A

ΔP = 0

e.g. experiment is open to the atmosphere

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6
Q

Isochoric Process

Definition

A

ΔV = 0

e.g. experiment takes place in a rigid container

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7
Q

Isothermal Process

Definition

A

ΔT = 0
a slow process to allow heat to flow in or out of the system to maintain temperature
all energy entering the system is used to do work rather than to increase the internal energy

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8
Q

Adiabatic Process

Definition

A

Qin = 0

e. g. insulated processes
- usually have to be very rapid to prevent any flow of energy into or out of the system

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9
Q

Isobaric Process

Won

A

Won = -PΔV

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10
Q

Isobaric Process

Qin

A

Qin = ΔEint - Won = CvΔT + PΔV

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11
Q

Isobaric Process

ΔEint

A

ΔEint = CvΔT

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12
Q

Isochoric Process

Won

A

Won = 0

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13
Q

Isochoric Process

Qin

A

Qin = ΔEint

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14
Q

Isochoric Process

ΔEint

A

ΔEint = CvΔT

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15
Q

Isothermal Process

Won

A

Won = nRT ln(Vi/Vf)

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16
Q

Isothermal Process

Qin

A

Qin = -Won

17
Q

Isothermal Process

ΔEint

A

ΔEint = 0

18
Q

Adiabatic Process

Won

A

Won = Cv/nR (PfVf - PiVi) = 1/(1/γ) (PfVf - PiVi)

19
Q

Adiabatic Process

Qin

A

Qin = 0

20
Q

Adiabatic Process

ΔEint

A

ΔEint = CvΔT

21
Q

Work Done in a Cycle

A

the area enclosed by the shape on a P-V diagram

22
Q

Work Done on a Gas

A

area under the line on a PV diagram i.e.

Won = - (Vi->Vf) ∫P dv

23
Q

Adiabatic Process

P, V & T

A

-in an adiabatic process V, P and T can all change
PV^γ = constant
TV^(γ-1) = constant
PV = nRT (for an ideal gas)

24
Q

Internal Energy of an Ideal Gas

A

ΔEint = CvΔT